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荷斯坦奶牛长寿的遗传分析及其与繁殖性状的关系。

Genetic analysis of longevity and their associations with fertility traits in Holstein cattle.

机构信息

College of Animal Science and Technology, Ningxia Key Laboratory of Ruminant Molecular and Cellular Breeding, Ningxia University, Yinchuan 750021, China.

Ningxia Agriculture Reclamation Helanshan Dairy Co. Ltd, Yinchuan 750021, China.

出版信息

Animal. 2023 Jun;17(6):100851. doi: 10.1016/j.animal.2023.100851. Epub 2023 May 10.

Abstract

The increase of longevity is intended to reduce involuntary culling rates, not extend the life span, and it reflects the ability of animals to successfully cope with the environment and disease during production. Sire model, animal model and repeatability animal models were used to estimate the (co) variance components of longevity and fertility traits. Six longevity and thirteen fertility traits were analysed, including herd life (HL), productive life (PL), number of days between first calving and the end of first lactation or culling (L1); number of days between first calving and the end of the second lactation or culling (L2); number of days between first calving and the end of the third lactation or culling (L3); number of days between first calving and the end of the fourth lactation or culling (L4); age at first service, age at first calving (AFC), the interval from first to last inseminations in heifer (IFLh), conception rate of first insemination in heifer, days open (DO), calving interval, gestation length, interval from calving to first insemination (ICF), interval from first to last inseminations in cow (IFLc), conception rate of first insemination in cow, calving ease (CE), birth weight, and calf survival. The estimated heritabilities (±SE) were 0.018 (±0.003), 0.015 (±0.003), 0.049 (±0.004), 0.025 (±0.003), 0.009 (±0.002) and 0.011 (±0.002) for HL, PL, L1, L2, L3 and L4, respectively. Strong correlations were appeared in HL and PL; the genetic and phenotypic correlation coefficients were 0.998 and 0.985, respectively. There were high genetic and phenotypic correlations which were observed in L1 and L2, L2 and L3, L3 and L4, respectively. All fertility traits of heifer showed medium to high heritability, while the cow showed low heritability. All heifer fertility traits had low genetic associations with longevity traits, ranging from -0.018 (L2 and IFLh) to 0.257 (L3 and AFC). Most of the fertility traits showed negative correlations with longevity traits in different parities, and we recommend DO, ICF, IFLc and CE as indirect indicators of longevity traits in dairy cows, but we also need to take into account the differences between parities.

摘要

寿命的延长旨在降低非自愿淘汰率,而不是延长寿命,这反映了动物在生产过程中成功应对环境和疾病的能力。使用种公牛模型、动物模型和可重复性动物模型来估计寿命和繁殖力性状的(协)方差分量。分析了 6 个寿命和 13 个繁殖力性状,包括 herd life (HL)、productive life (PL)、从第一次配种到第一次泌乳或淘汰结束的天数(L1);从第一次配种到第二次泌乳或淘汰结束的天数(L2);从第一次配种到第三次泌乳或淘汰结束的天数(L3);从第一次配种到第四次泌乳或淘汰结束的天数(L4);初次配种年龄、初次产犊年龄(AFC)、小母牛首次输精到最后一次输精的间隔时间(IFLh)、小母牛首次输精的受胎率、发情天数(DO)、产犊间隔、妊娠期、从产犊到第一次输精的间隔时间(ICF)、从第一次配种到最后一次输精的间隔时间(IFLc)、首次输精的受胎率、母牛、产犊难易程度(CE)、初生重和犊牛成活率。估计的遗传力(±SE)分别为 0.018(±0.003)、0.015(±0.003)、0.049(±0.004)、0.025(±0.003)、0.009(±0.002)和 0.011(±0.002),HL、PL、L1、L2、L3 和 L4。HL 和 PL 之间存在很强的相关性;遗传和表型相关系数分别为 0.998 和 0.985。L1 和 L2、L2 和 L3、L3 和 L4 之间存在高度遗传和表型相关性。小母牛的所有繁殖力性状均表现出中等至高度的遗传力,而母牛的遗传力较低。小母牛的所有繁殖力性状与寿命性状的遗传关联均较低,范围从-0.018(L2 和 IFLh)到 0.257(L3 和 AFC)。大多数繁殖力性状在不同胎次中与寿命性状呈负相关,我们建议将 DO、ICF、IFLc 和 CE 作为奶牛寿命性状的间接指标,但我们还需要考虑胎次之间的差异。

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